An elevation-adjustable rod member locking structure is disclosed, which includes a locating socket fixedly fastened to an end of a tubular upright post, the locating socket having an inward shoulder, an adjustment nut threaded onto a screw rod and supported on the shoulder, the adjustment nut having an outward flange, and a lock screw threaded into the locating socket and stopped at the top side of the outward flange of the adjustment nut to lock the adjustment nut with the locating socket.
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1. An elevation-adjustable rod member locking structure provided between a tubular upright post and a screw rod and adapted to adjust the elevation of said screw rod relative to said tubular upright post and to lock said screw rod in the adjusted position, comprising:
a locating socket fixedly fastened to an end of said tubular upright post, said locating socket comprising an inner thread extended to a top side thereof and a shoulder inwardly disposed at a bottom side thereof, said shoulder having a top face; an adjustment nut mounted inside said locating socket and supported on said shoulder, said adjustment nut comprising an inner thread threaded onto said screw rod, a peripheral wall, an operation unit at an upper part of said peripheral wall, and an outward flange at a bottom side of said peripheral wall, said outward flange having a top face and a bottom face supported on the top face of said shoulder of said locating socket; and a lock screw adapted to lock said adjustment nut in said locating socket, said lock screw comprising an annular inside wall sleeved onto the peripheral wall of said adjustment nut, a head around the periphery thereof at a top side, an outer thread threaded into the inner thread of said locating socket, and a bottom edge supported on the top face of said outward flange of said adjustment nut.
2. The elevation-adjustable rod member locking structure as claimed in
3. The elevation-adjustable rod member locking structure as claimed in
4. The elevation-adjustable rod member locking structure as claimed in
5. The elevation-adjustable rod member locking structure as claimed in
6. The elevation-adjustable rod member locking structure as claimed in
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1. Field of the Invention
The present invention relates to an elevation-adjustable rod member locking structure, which enables two rod members to be axially adjusted to change the combined length, and can positively lock the rod members in position.
2. Description of Related Art
Therefore, it is desirable to provide an elevation-adjustable rod member locking structure that eliminates the aforesaid drawbacks.
The main object of the present invention is to provide an elevation-adjustable rod member locking structure, which enables two rod members to be axially adjusted to change the combined length, and can positively lock the rod members in position. It is another object of the present invention to provide an elevation-adjustable rod member locking structure, which provides a high locking power, enabling the locked rod members to bear high compressive force as well as stretching force. It is still another object of the present invention to simplify and cost down an elevation-adjustable rod member locking structure.
To achieve these and other objects of the present invention, the elevation-adjustable locking structure comprises a locating socket, an adjustment nut, and a lock screw. The locating socket is fixedly fastened to an end of a tubular upright post, comprising an inner thread extended to the topside thereof and a shoulder inwardly disposed in the bottom side thereof. The shoulder has a top face. The adjustment nut is mounted inside the locating socket and supported on the shoulder, comprising an inner thread threaded onto a screw rod, a peripheral wall, an operation unit at the top side of the peripheral wall, and an outward flange at the bottom side of the peripheral wall. The outward flange has a top face, and a bottom face supported on the top face of the shoulder of the locating socket. The lock screw is adapted to lock the adjustment nut in the locating socket, comprising an annular inside wall sleeved onto the peripheral wall of the adjustment nut, a head around the periphery thereof at the topside, an outer thread threaded into the inner thread of the locating socket, and a bottom edge supported on the top face of the outward flange of the adjustment nut. When rotating the adjustment nut clockwise/counter-clockwise after loosened the lock screw, the screw rod is forced to move upwards/downwards to the desired elevation. After adjustment, to rotate the lock screw downwards would force its bottom edge against the top face of the outward flange, then the bottom face of the outward flange is forced against the top face of the shoulder accordingly. Therefore, the locating socket, the adjustment nut, and the lock screw are all locked together.
Other objects, advantages, and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Referring to
The adjustment nut 2 comprises an inner thread 21 threaded onto the screw rod 7, an operation unit 221 at the upper part of the periphery 22, and an outward flange 222 at the bottom side of the periphery 22. The outward flange 222 has a top face 223 and a bottom face 224. After insertion of the adjustment nut 2 into the locating socket 1, the bottom face 224 of the outward flange 222 of the adjustment nut 2 is supported on the top face 121 of the shoulder 12 of the locating socket 1. According to this embodiment, the bottom face 224 of the adjustment nut 2 and the top face 121 of the shoulder 12 are tapered faces matching each other.
The lock screw 3 comprises an annular inside wall 31 sleeved onto the periphery 22 of the adjustment nut 2, a head 32 around the periphery of the top side thereof, an outer thread 33 threaded into the inner thread 11 of the locating socket 1, and a bottom edge 34 supported on the top face 223 of the outward flange 222 of the adjustment nut 2. According to this embodiment, the bottom edge 34 and the top face 223 are tapered surfaces matching each other.
Further, a check nut 6 may be threaded onto the screw rod 7 and supported on the topmost edge of the adjustment nut 2.
When attaching a wrench to operation unit 221 to rotate the adjustment nut 2 clockwise/counter-clockwise, the screw rod 7 is forced by the inner thread 21 of the adjustment nut 2 to move axially upwards/downwards. Because the bottom face 224 of the adjustment nut 2 and the top face 121 of the shoulder 12 of the locating socket 1 are made tapered, the adjustment nut 2 and the locating socket 1 are automatically aligned in a line when rotating the adjustment nut 2.
After adjustment of the elevation of the screw rod 7, attaching the wrench to the head 32 to rotate and fasten tight the lock screw 3. As illustrated in
When adjusting the elevation of the screw rod 7 again, loosen the lock screw 3 to release downward pressure from the outward flange 222 of the adjustment nut 2, and then rotate the adjustment nut 2 to move the screw rod 7 to the desired elevation. After adjustment, the lock screw 3 is fastened tight to force the bottom edge 34 against the top face 223 of the outward flange 222 of the adjustment nut 2 and the top face 121 of the shoulder 12 of the locating socket 1. Because the bottom edge 34 of the lock screw 3 and the top face 223 of the outward flange 222 of the adjustment nut 2 are made tapered, the lock screw 3 and the adjustment nut 2 are automatically aligned in a line when rotating the lock screw 3.
According to this embodiment, the locating socket 1 further comprises a first side screw hole 14, and a first tightening up screw 4 threaded into the first side screw hole 14 and stopped against the lock screw 3 to prohibit the lock screw 3 from rotation relative to the locating socket 1. Further, the locating socket 1 can be made having a second side screw hole 15 and a second tightening up screw 5 threaded into the second side screw hole 15 and stopped against the screw rod 7 to prohibit the screw rod 7 from rotary motion relative to the adjustment nut 2.
Although the present invention has been explained in relation to its preferred embodiments, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
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